Abe Tadashi, Ito Masashi, Takahashi Ryuichi, Honma Toshimitsu, Kuramata Masato, Ishikawa Satoru
Institute for Agro-Environmental Sciences, National Agriculture and Food Research Organization (NARO), Tsukuba 305-8604, Japan.
Akita Prefectural Agricultural Experiment Station, Akita 010-1231, Japan.
Plants (Basel). 2022 Aug 22;11(16):2178. doi: 10.3390/plants11162178.
Phytoextraction by high-Cd-accumulating rice lacking a functional allele is promising for Cd removal from paddy soils. To increase rice Cd extraction efficiency, we developed a new high-Cd variety, TJN25-11. For this, we pyramided a nonfunctional allele from a high-Cd variety, Jarjan, and two QTLs for increased shoot Cd concentrations, which were discovered in a mapping population derived from a high-Cd variety, Nepal 555, and a low-Cd variety, Tachisugata. In two Cd-contaminated paddy fields under drained aerobic soil conditions, TJN25-11 presented significantly higher Cd concentrations in the straw and panicles than the OsHMA3-deficient varieties TJTT8 and Cho-ko-koku. Among the varieties, TJN25-11 had a relatively high shoot biomass, resulting in the highest Cd accumulation in the shoots. The soil Cd decreased by approximately 20% after TJN25-11 growth. The amount of Cd that accumulated in the TJN25-11 aerial parts was much greater than the amount of Cd that decreased in the topsoil, suggesting that Cd was absorbed from deeper soil layers. Thus, we revealed the effects of QTL pyramiding on shoot Cd accumulation and Cd phytoextraction efficiency. Since TJN25-11 has favorable agronomic traits for compatibility with Japanese cultivation systems, this variety could be useful for Cd phytoextraction in Cd-contaminated paddy fields.
缺乏功能性等位基因的高镉积累水稻进行植物提取有望从稻田土壤中去除镉。为了提高水稻镉提取效率,我们培育了一个新的高镉品种TJN25 - 11。为此,我们将来自高镉品种Jarjan的一个非功能性等位基因与两个增加地上部镉浓度的QTL进行聚合,这两个QTL是在一个由高镉品种Nepal 555和低镉品种Tachisugata衍生的作图群体中发现的。在排水好氧土壤条件下的两块镉污染稻田中,TJN25 - 11在稻草和稻穗中的镉浓度显著高于缺乏OsHMA3的品种TJTT8和越光。在这些品种中,TJN25 - 11地上部生物量相对较高,导致地上部镉积累量最高。TJN25 - 11生长后土壤镉含量下降了约20%。TJN25 - 11地上部积累的镉量远大于表土中减少的镉量,表明镉是从更深的土壤层吸收而来的。因此,我们揭示了QTL聚合对地上部镉积累和镉植物提取效率的影响。由于TJN25 - 11具有与日本栽培系统相兼容的良好农艺性状,该品种可用于镉污染稻田的镉植物提取。