Gao Lei, Chang Jiadong, Chen Ruijie, Li Hubo, Lu Hongfei, Tao Longxing, Xiong Jie
College of Life Sciences, Zhejiang Sci-Tech University, Hangzhou, 310018, People's Republic of China.
Zhejinag Province Key Laboratory of Plant Secondary Metabolism and Regulation, Hangzhou, 310018, People's Republic of China.
Rice (N Y). 2016 Dec;9(1):39. doi: 10.1186/s12284-016-0112-7. Epub 2016 Aug 8.
Iron (Fe) is essential for rice growth and humans consuming as their staple food but is often deficient because of insoluble Fe(III) in soil for rice growth and limited assimilation for human bodies, while cadmium (Cd) is non-essential and toxic for rice growth and humans if accumulating at high levels. Over-accumulated Cd can cause damage to human bodies. Selecting and breeding Fe-rich but Cd-free rice cultivars are ambitious, challenging and meaningful tasks for researchers. Although evidences show that the mechanisms of Fe/Cd uptake and accumulation in rice are common to some extent as a result of similar entry routes within rice, an increasing number of researchers have discovered distinct mechanisms between Fe/Cd uptake and accumulation in rice. This comprehensive review systematically elaborates and compares cellular mechanisms of Fe/Cd uptake and accumulation in rice, respectively. Mechanisms for maintaining Fe homeostasis and Cd detoxicification are also elucidated. Then, effects of different fertilizer management on Fe/Cd accumulation in rice are discussed. Finally, this review enumerates various approaches for reducing grain Cd accumulation and enhancing Fe content in rice. In summary, understanding of discrepant cellular mechanisms of Fe/Cd accumulation in rice provides guidance for cultivating Fe-fortified rice and has paved the way to develop rice that are tolerant to Cd stress, aiming at breeding Fe-rich but Cd-free rice.
铁(Fe)对水稻生长以及以水稻为主食的人类来说至关重要,但由于土壤中不溶性铁(III)不利于水稻生长,且人体对铁的吸收有限,铁元素常常缺乏。而镉(Cd)对水稻生长并非必需,若在水稻中大量积累,对水稻生长及人类均有毒害作用。镉的过度积累会对人体造成损害。选育富铁且无镉的水稻品种,对研究人员而言是艰巨、具有挑战性且意义重大的任务。尽管有证据表明,由于水稻中铁和镉的进入途径相似,它们在水稻中的吸收和积累机制在一定程度上具有共性,但越来越多的研究人员发现水稻中铁和镉的吸收与积累机制存在差异。这篇综述系统地阐述并比较了水稻中铁和镉吸收与积累的细胞机制,还阐明了维持铁稳态和镉解毒的机制。随后,讨论了不同施肥管理对水稻中铁和镉积累的影响。最后,本综述列举了减少水稻籽粒镉积累和提高铁含量的各种方法。总之,了解水稻中铁和镉积累的不同细胞机制,为培育富铁水稻提供了指导,并为培育耐镉胁迫水稻铺平了道路,目标是培育出富铁且无镉的水稻。