Liew Hon Jung, Rahmah Sharifah, Tang Pei Wen, Waiho Khor, Fazhan Hanafiah, Rasdi Nadiah Wan, Hamin Siti Izzah Athirah, Mazelan Suhairi, Muda Sabri, Lim Leong-Seng, Chen Young-Mao, Chang Yu Mei, Liang Li Qun, Ghaffar Mazlan Abd
Higher Institution Centre of Excellence (HICOE), Institute of Tropical Aquaculture and Fisheries, Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia.
Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Science, Harbin, China.
Heliyon. 2022 Jul 19;8(7):e09989. doi: 10.1016/j.heliyon.2022.e09989. eCollection 2022 Jul.
is one of the shellfish species with high aquaculture value due to its increasing market demand. However, the comparatively low production volume compared to demand coupled with the rapid decline of the natural environment, consequently, drives the potential depletion of the wild population. The decrease in water pH related to anthropogenic pollution is one of the most critical factors affecting the early life performances of . Therefore, this study was designed to examine the effect of low water pH on feeding, growth and development of early life stages. Experimental water pH was set as neutral (7.7 ± 0.4); mild-acidic (6.4 ± 0.5) and acidic (5.4 ± 0.2) with triplication at a stocking density of 2 larvae/L for 30 days. As expected, larvae were highly sensitive to acidic pH with no larvae survived beyond 48 h of exposure. Feeding, survival and growth of larvae were adversely affected by mild-acidic pH exposure as compared to neutral pH. Larvae exposed to mild-acidic water pH experienced a prolonged larval period and only metamorphosed to the post-larval stage at day-30. Whilst under neutral water pH, larval that metamorphosed to post-larval was first observed on day-23. The negative impact of decreased pH, even in mild-acidic pH exposure, on the feeding, survival, growth and development of larvae highlights the urgency of periodic pH monitoring during larviculture.
由于市场需求不断增加,它是具有高养殖价值的贝类物种之一。然而,与需求相比产量相对较低,再加上自然环境的迅速衰退,因此导致野生种群有潜在的枯竭风险。与人为污染相关的水体pH值下降是影响其早期生命表现的最关键因素之一。因此,本研究旨在考察低水体pH值对其早期生命阶段摄食、生长和发育的影响。实验水体pH值设定为中性(7.7±0.4);轻度酸性(6.4±0.5)和酸性(5.4±0.2),每组设三个重复,放养密度为2只幼虫/升,持续30天。正如预期的那样,其幼虫对酸性pH值高度敏感,暴露48小时后无幼虫存活。与中性pH值相比,轻度酸性pH值暴露对幼虫的摄食、存活和生长产生了不利影响。暴露于轻度酸性水体pH值的幼虫经历了延长的幼虫期,直到第30天才变态到幼体后期阶段。而在中性水体pH值条件下,最早在第23天观察到变态到幼体后期的幼虫。pH值下降,即使是轻度酸性pH值暴露,对其幼虫的摄食、存活、生长和发育产生的负面影响凸显了在其幼虫养殖期间定期监测pH值的紧迫性。