Bowles J T
Med Hypotheses. 2000 Jun;54(6):864-94. doi: 10.1054/mehy.1999.0951.
(Note: This unorthodox paper contains the first argument for heart disease being a programmed age change and promoted by the dramatic, post age-40 increases in the hormones FSH and hCG seen in some individuals.) A recent issue of Science suggests that the evolutionary purpose of sex is unknown.
Surviving to adulthood implies a valuable gene combination which is destroyed by sexual recombination. This should be detrimental to offspring. PROPOSED: Sex is group-selected in prey to allow coalescence of beneficial, and disposal of detrimental, mutations in single individuals enabling rapid adaptation to novel predation. Group selection is a universal force driven by local inter-species (not intra-species) competition. Aging, metabolism, litter size, and fixed body size are directly linked. Sexual recombination and chromosomes destroy gene linkage and exist because mutations are usually detrimental, rarely positive, and occur in linked groups. In unevolving environments, sex is selected against and asexuality emerges. Periodic evolution of novel predators, like man, can explain the 'punctuated equilibria' fossil record. Genes inhibited by methylation or chromatin condensation, expressed at older ages in predation-minimized environments, allow for group selection. Stress increases mutation rates and beneficial mutation likelihood. Females select bigger, brighter, louder, or stronger males that can survive predator attention. Size approximates age and thus predator encounters; male traits represent predation-survival potential. Human male traits include, balding, acne, beard-length, wrinkling, graying, nose/ear growth. Progeria accelerates development of most male traits. Domination of groups by single males allows rapid predation-defense evolution: adolescent males are expelled, brave the wild, and expel another group's male to mate. If expelled and dominant males are culled by predation, males reaching puberty first will reproduce. Hormonal acceleration of puberty accelerates aging/population turnover, induces smaller bodies, larger litters. With a fixed group biomass, more, smaller, stressed individuals with faster aging/turnover, increase beneficial mutation likelihood. 'Kin selection', where dominant families are supported by celibate relatives, allow the best group genes to survive famine. Dominant families gorge while others starve. Equal food sharing results in group extinction leading to group-evolved human traits of social hierarchy, greed, king/queen/God worship. Menstrual hormone cycling parallels aging. FSH and DHT promote ovarian, hair, acne, dental, and arterial follicle development causing ovulation, hair growth, pimples, dental caries, and atherosclerotic soft plaques. Soft plaques contain macrophages and LDL plug; upper plaque layers thin and rupture, releasing LDL plug, causing thrombosis. FSH withdrawal or LH/hCG increases trigger ovulation and thrombosis. Artery narrowing atherosclerotic hard plaques are stress-induced through cortisol-promoted necrotic calcification. LH/hCG-induced apoptosis promotes ovulation and aging-related somatic atrophy. Long-term estradiol stimulates, while progesterone suppresses, gonadotropin levels. Estradiol protects by inhibiting gonadotropin bioactivity and has extracellular antioxidant, but intranuclear free radical, effects. Female X-linked gene mosaicism conserves evolved aging systems. Maternal age factors for chromosomal trisomy suggest menopause prevents human parthenogenesis. Homosexuality and serial killing inhibit genetic contribution by individuals evolutionarily perceived as stressed. Smoking during pregnancy may induce homosexual offspring. Nitric oxide, a free radical, stimulates cGMP, but not cAMP. cGMP likely first evolved as an antioxidant defense to free radicals. Human aging syndromes might reflect human evolution progression. AS#4 affects tissues evolved from plant ancestors, AS#5a - from predators, AS#5b-immune system, and AS#6-sex tissues. (ABSTRACT TRUNCA
(注意:这篇非传统的论文首次提出心脏病是一种程序性的年龄变化,并由某些个体在40岁后激素促卵泡激素(FSH)和人绒毛膜促性腺激素(hCG)急剧增加所推动。)最近一期的《科学》杂志表明,性的进化目的尚不清楚。
活到成年意味着拥有一种有价值的基因组合,而这种组合会被有性重组破坏。这对后代应该是有害的。
在猎物中,性是通过群体选择来实现的,以便有益突变在单个个体中合并,有害突变被清除,从而使个体能够快速适应新的捕食者。群体选择是一种由局部种间(而非种内)竞争驱动的普遍力量。衰老、新陈代谢、窝仔数和固定的身体大小直接相关。有性重组和染色体破坏基因连锁,其存在是因为突变通常是有害的,很少是有益的,并且以连锁群体的形式出现。在不进化的环境中,性被选择淘汰,无性繁殖出现。新捕食者(如人类)的周期性进化可以解释“间断平衡”的化石记录。在捕食风险最小化的环境中,受甲基化或染色质凝聚抑制的基因在老年时表达,这有利于群体选择。压力会增加突变率和有益突变的可能性。雌性选择体型更大、颜色更鲜艳、叫声更大或更强壮的雄性,这些雄性能够在捕食者的关注下存活下来。体型近似年龄,因此也近似遭遇捕食者的概率;雄性特征代表捕食生存潜力。人类男性特征包括脱发、痤疮、胡须长度、皱纹、白发、鼻子/耳朵生长。早衰症会加速大多数男性特征的发展。单个雄性对群体的统治允许快速的捕食防御进化:青春期雄性被驱逐,在野外闯荡,并驱逐另一群体的雄性以进行交配。如果被驱逐的优势雄性被捕食者淘汰,最早进入青春期的雄性将进行繁殖。青春期的激素加速会加速衰老/种群更替,导致体型变小、窝仔数增多。在固定的群体生物量下,更多、更小、压力更大且衰老/更替更快的个体增加了有益突变的可能性。“亲缘选择”中,独身亲属支持优势家庭,使最佳群体基因在饥荒中得以存活。优势家庭饱食,而其他家庭挨饿。平等分享食物会导致群体灭绝,从而产生群体进化出的人类社会等级制度、贪婪、对国王/女王/上帝的崇拜等特征。月经激素循环与衰老平行。FSH和双氢睾酮(DHT)促进卵巢、毛发、痤疮、牙齿和动脉卵泡发育,导致排卵、毛发生长、粉刺、龋齿和动脉粥样硬化软斑块。软斑块含有巨噬细胞和低密度脂蛋白(LDL)栓子;斑块上层变薄并破裂,释放LDL栓子,导致血栓形成。FSH撤退或LH/hCG增加会触发排卵和血栓形成。动脉狭窄的动脉粥样硬化硬斑块是由皮质醇促进的坏死钙化通过压力诱导形成的。LH/hCG诱导的细胞凋亡促进排卵和与衰老相关的体细胞萎缩。长期雌激素刺激,而孕酮抑制促性腺激素水平。雌激素通过抑制促性腺激素生物活性起到保护作用,具有细胞外抗氧化作用,但在细胞核内有自由基作用。女性X连锁基因嵌合保留了进化而来的衰老系统。染色体三体的母亲年龄因素表明更年期可防止人类孤雌生殖。同性恋和连环杀人抑制了那些在进化上被视为有压力的个体的基因贡献。怀孕期间吸烟可能会导致同性恋后代。一氧化氮作为一种自由基,刺激环鸟苷酸(cGMP),但不刺激环磷酸腺苷(cAMP)。cGMP可能最初是作为对自由基的抗氧化防御而进化的。人类衰老综合征可能反映了人类进化进程。AS#4影响从植物祖先进化而来的组织,AS#5a - 从捕食者进化而来的组织,AS#5b - 免疫系统组织,以及AS#6 - 性组织。(摘要截断)